Membrane mimetics control internal hydration and catalytic activity of the copper ATPase LpCopA from Legionella pneumophila
Nucke, L.; Huang, Y.-H.; Oertel, J.; Tsushima, S.; Fahmy, K.
Show abstract
Abstract textMembrane protein function depends critically on the surrounding lipid bilayer, which supports specific lipid-protein interactions and imposes constraints through its ensemble properties. Ion-transporting ATPases undergo large conformational changes that perturb these interactions, and the high chemical potential of water can further drive conformational transitions through changes in internal hydration. Here, we investigated the relationship between membrane environment, internal hydration, and catalytic activity in the P1B-type copper ATPase LpCopA from Legionella pneumophila. BADAN-labeled LpCopA mutants revealed distinct basal hydration states near the conserved canonical binding site (CBS) cysteines C382 and C384, with C382 residing in a more hydrated environment than C384. Using the osmolyte PEG-1500, the spectral response of BADAN indicated an average internal hydration volume of about 800 [A]3 for LpCopA in E. coli lipid-doped mixed micelles (MMs), corresponding to approximately 25 water molecules. In nanodiscs (NDs), less than half of this volume responded to osmotic pressure, consistent with compaction of the transmembrane helical bundle under membrane lateral pressure. Remarkably, ATPase activity measured in different lipid reconstitution systems scaled with the extent of internal hydration, with diisobutylene/maleic acid lipid particles (DIBMALPs) imposing the tightest transmembrane compaction and lowest basal activity. These data indicate that the packing density and internal hydration of the transmembrane domain of LpCopA are strongly modulated by the membrane environment. The energetic estimates further support a model in which hydration-dependent expansion of the transmembrane domain against membrane lateral pressure contributes to the free-energy barrier of ATP hydrolysis.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Magainin 2 and PGLa in Bacterial Membrane Mimics I: Peptide-Peptide and Lipid-Peptide Interactions 94%
- Quantifying interleaflet coupling of phase behavior and observing anti-registered phases in asymmetric lipid bilayers 94%
- On the mechanism of bilayer separation by extrusion; or, why your large unilamellar vesicles are not really unilamellar 94%
Similar papers in this journal
- Membrane insertion mechanism of the caveolae coat protein Cavin1 94%
- Identification of Hydrophobic Gates by Simulation-Enabled Analysis of the Ion Channel Structural Proteome 93%
- The bacterial ESCRT-III PspA rods thin lipid tubules and and increase membrane curvature through helix α0 interactions 93%
Similar papers in this journal
- Membrane binding of a cyanobacterial ESCRT-III protein crucially involves the helix α1-3 hairpin conserved in all superfamily members 95%
- Structural studies of a serum amyloid A octamer that is primed to scaffold lipid nanodiscs 93%
- Partial Mimicry of the Microtubule Binding of Tau by Its Membrane Binding 93%
Similar papers in this journal
- Lipid bilayers determine the allostery but not intrinsic affinity of cAMP binding to pacemaker channels 93%
- Membrane Interfacial Potential Governs Surface Condensation andFibrillation of α-Synuclein in Neurons 93%
- Phospholipids are imported into mitochondria by VDAC, a dimeric beta barrel scramblase 92%
Similar papers in this journal
- SARS-CoV-2 Fusion Peptide has a Greater Membrane Perturbating Effect than SARS-CoV with Highly Specific Dependence on Ca2+ 93%
- A new twist in ABC transporter mediated multidrug resistance - Pdr5 is a drug/proton co-transporter 92%
- Altering CLC stoichiometry by reducing non-polar side-chains at the dimerization interface 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.